Scinovex
article Open AccessTop 1% cited

Nitrogen and phosphorus inputs control phytoplankton growth in eutrophic Lake Taihu, China

Limnology and Oceanography · 2009 · Vol. 55(1) · pp. 420–432
Hai XuHans W. PaerlBoqiang QinGuangwei ZhuGuang Gaoa

Abstract

Lake Taihu (Taihu) is the third largest freshwater lake in China and an important drinking water, fishing, and tourism resource for Jiangsu Province. Recent toxic cyanobacterial blooms caused by excessive human nutrient loading have focused attention on arresting blooms and restoring the lake to acceptable water quality conditions by reducing nutrient inputs. Field sampling and in situ nutrient enrichment bioassays were conducted to determine seasonal patterns of nutrient limitation and nutrient thresholds for phytoplankton growth. The TN: TP and TDN:TDP mass ratios in the ambient water showed high seasonal variation and changed from 33‐80 : 1 and 52‐212 : 1, respectively, in winter and spring, and both declined to below 20 : 1 in summer. In spring and winter, total phytoplankton biomass and growth rates increased significantly with additions of P, with no primary effects from N, suggesting P limitation of phytoplankton growth. During the summer and fall bloom periods, however, N additions alone revealed a significant positive effect on phytoplankton growth, and P additions only stimulated phytoplankton growth once N had been added, suggesting that N was the primary limiting nutrient, with P being a secondarily limiting nutrient. When P enrichment was ≤ 0.20 mg P L −1 and N enrichment ≤0.80 mg N L −1 , growth of the toxin‐producing, dominant bloom‐forming cyanobacteria Microcystis spp. was not nutrient limited. This study suggests that availability of N during the summer is a key growth‐limiting factor for the proliferation and maintenance of toxic Microcystis spp. blooms. Therefore, although P load reduction is important, N load reduction is essential for controlling the magnitude and duration of algal booms in Taihu.

Aquatic Ecosystems and Phytoplankton DynamicsMarine and coastal ecosystemsWater Quality and Pollution AssessmentPhytoplanktonEutrophicationNutrientMicrocystisAlgal bloomPhosphorusEnvironmental scienceBiomass (ecology)BloomCyanobacteria

Funding

  • U.S. Environmental Protection Agency
  • National Natural Science Foundation of China
  • Chinese Academy of Sciences
Citations
990
FWCI
17.00
field-weighted impact
References
44
Percentile
100%
vs. same field & year
Citations per year
Cited by
The dilemma of controlling cultural eutrophication of lakes
Proceedings of the Royal Society B Biological Sciences · 2012 · 688 citations
References
Nuisance phytoplankton blooms in coastal, estuarine, and inland waters
Limnology and Oceanography · 1988 · 918 citations
Nutrient limitation of phytoplankton in Chesapeake Bay
Marine Ecology Progress Series · 1992 · 535 citations
Our evolving conceptual model of the coastal eutrophication problem
Marine Ecology Progress Series · 2001 · 2,824 citations
Eutrophication of freshwater and coastal marine ecosystems a global problem
Environmental Science and Pollution Research · 2003 · 2,139 citations
Environmental issues of Lake Taihu, China
Hydrobiologia · 2007 · 940 citations
Cyanobacterial dominance in lakes
Hydrobiologia · 2000 · 667 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Nitrogen and phosphorus inputs control phytoplankton growth in eutrophic Lake Taihu, China · Scinovex